Eilat D, Hochberg M, Pumphrey J, Rudikoff S
J Immunol. 1984 Jul;133(1):489-94.
Two anti-DNA hybridoma autoantibodies ( A52 , D42 ) were prepared by fusing spleen cells from unimmunized NZB/NZW F1 female mice with BALB/c myeloma cells. The monoclonal antibodies were purified to homogeneity and were analyzed for their antigen-binding specificities. The two anti-DNA antibodies bound single-stranded, double-stranded, and supercoiled DNA, with a marked preference for the single-stranded conformation. Competition experiments performed with synthetic polynucleotides, as well as chain reconstitution experiments, indicated that both the sugar-phosphate backbone and the heterocyclic bases of the nucleic acid are essential for antibody recognition. Amino terminal sequence analysis of A52 and two RNA-binding hybridoma proteins revealed that the heavy chains from all three were members of the VHII subgroup and that the A52 light chain was homologous to the VK8 subgroup. The D42 heavy chain was found to be similar to a phosphocholine-binding hybridoma of the VHIII subgroup.
通过将未免疫的NZB/NZW F1雌性小鼠的脾细胞与BALB/c骨髓瘤细胞融合,制备了两种抗DNA杂交瘤自身抗体(A52、D42)。将单克隆抗体纯化至同质,并分析其抗原结合特异性。这两种抗DNA抗体可结合单链、双链和超螺旋DNA,对单链构象有明显偏好。用合成多核苷酸进行的竞争实验以及链重建实验表明,核酸的糖磷酸骨架和杂环碱基对于抗体识别都是必不可少的。对A52和两种RNA结合杂交瘤蛋白进行的氨基末端序列分析表明,所有三种蛋白的重链都是VHII亚组的成员,且A52轻链与VK8亚组同源。发现D42重链与VHIII亚组的一种磷酸胆碱结合杂交瘤相似。